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Thermohydraulic performance evaluation for horizontal tube by using combination of modified coiled wire inserts and graphene nanoplatelet-water nanouids

机译:水平管的热液性能评价通过使用改进的卷材插入件和石墨烯纳米片 - 水纳米体的组合

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摘要

The effects of combined using of water-graphene nanoplatelet nanofluid and three different conical wire coils (converging, converging-diverging and diverging) on thermohydraulic performance of a heat exchanger tube are experimentally studied. Three different weight fractions 0.5, 0.75 and 1% of Graphene-Water nanofluids are used and converging, converging-diverging, diverging conical wire coils with two different pitch ratios 2 and 3 are selected for the experiments. The experiments are conducted under constant heat flux and Reynolds number ranging from 4000 to 27,000. The results indicated that use of conical wire coils cause to increase both the heat transfer rate and fluid friction as expected, in addition, adding the graphene nanoplatelet in pure water leads to strongly increase in heat transfer rate meanwhile cause to slightly increase in friction factor. Experimental results revealed that combination of diverging conical wire coil insert with weight fraction of 1% Graphene-Water nanofluid provides higher heat transfer performance than the other cases. The highest Performance Evaluation Criteria of 1.73 is observed while the diverging conical wire coil, which has the pitch ratio of 2, at Reynolds number of 6128 for weight fraction of 1% Graphene-Water nanofluid.
机译:实验研究了使用水石墨烯纳米片纳米流体和三种不同圆锥线圈(会聚,会聚分歧和发散)对热交换器管的热液压性能的影响。使用三种不同的重量级分0.5,0.75和1%的石墨烯 - 水纳米流体和会聚,会聚发散,为实验选择具有两个不同俯仰比例2和3的圆锥线圈。实验在恒定的热通量和雷诺数范围为4000至27,000。结果表明,使用锥形线圈的使用导致随着预期的预期增加传热速率和流体摩擦,另外,在纯水中加入石墨烯纳米片导致热传递率强烈增加,同时导致摩擦系数略微增加。实验结果表明,锥形线圈插入件的圆锥形线圈插入物的1%石墨烯 - 水纳米流体的组合提供比其他情况更高的传热性能。观察到1.73的最高性能评价标准,而在雷诺数为6128的沥青率为6128的分散比的分发圆线线圈,用于1%石墨烯 - 水纳米流体的重量分数。

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